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Using an Automatic Resistivity Profiler Soil Sensor On-The-Go in Precision Viticulture

机译:在精密葡萄栽培中使用自动电阻率剖面仪土壤传感器进行中

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摘要

Spatial information on vineyard soil properties can be useful in precision viticulture. In this paper a combination of high resolution soil spatial information of soil electrical resistivity (ER) and ancillary topographic attributes, such as elevation and slope, were integrated to assess the spatial variability patterns of vegetative growth and yield of a commercial vineyard (Vitis vinifera L. cv. Tempranillo) located in the wine-producing region of La Rioja, Spain. High resolution continuous geoelectrical mapping was accomplished by an Automatic Resistivity Profiler (ARP) on-the-go sensor with an on-board GPS system; rolling electrodes enabled ER to be measured for a depth of investigation approximately up to 0.5, 1 and 2 m. Regression analysis and cluster analysis algorithm were used to jointly process soil resistivity data, landscape attributes and grapevine variables. ER showed a structured variability that matched well with trunk circumference spatial pattern and yield. Based on resistivity and a simple terrain attribute uniform management units were delineated. Once a spatial relationship to target variables is found, the integration of point measurement with continuous soil resistivity mapping is a useful technique to identify within-plots areas of vineyard with similar status.
机译:有关葡萄园土壤特性的空间信息可用于精确的葡萄栽培。本文结合土壤电阻率(ER)的高分辨率土壤空间信息和辅助地形特征(例如海拔和坡度)进行了评估,以评估商业葡萄园(Vitis vinifera L cv。Tempranillo)位于西班牙拉里奥哈的葡萄酒产区。高分辨率连续地电测绘是通过带有车载GPS系统的自动电阻率剖面仪(ARP)移动传感器完成的;滚动电极使ER的测量深度约为0.5、1和2 m。回归分析和聚类分析算法被用于联合处理土壤电阻率数据,景观属性和葡萄变量。 ER显示出结构变异性,与树干周长空间格局和产量非常匹配。基于电阻率和简单的地形属性,划定了统一的管理单位。一旦找到与目标变量的空间关系,将点测量与连续土壤电阻率制图相结合,将是一种有用的技术,可用于识别状态相似的葡萄园的地内区域。

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